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Investigation of the Wettability of Liquid Desiccant along the Vertical Surface of a Plate Type Heat Exchanger

机译:液体干燥剂沿板式换热器垂直表面的润湿性研究

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Recently, many studies on dehumidifiers of lower flow rate of liquid desiccant which adopt plate type heat exchanger with internal cooling have been in progress. If lower flow rate of liquid desiccant maintains thin liquid film on the heat exchanger surface, heat and mass transfer performance would improve, stability of the liquid film increases, and entrainment of desiccant droplets does not occur. In this study, wettability of liquid desiccant along the vertical surface of a plate type heat exchanger has been investigated. Liquid desiccant was supplied on the top of plate heat exchangers which have different groove gaps. Through visualization test, it is found that plate heat exchanger of 1.0 mm groove gap shows the largest wettability. As mass flow rate of supplied liquid desiccant increases, the wettability of liquid desiccant becomes enhanced. An experimental apparatus was built up to measure regeneration performance of liquid desiccant. Regeneration performance test was carried out for various type of plate type heat exchanger. The wettability of liquid desiccant enhances and film thickness gets decreased by the grooved surface treatment. Thus, it is found that moisture discharge rate and mass transfer coefficient of liquid desiccant can be enhanced.
机译:近来,关于采用板式热交换器并内部冷却的,液体干燥剂流速较低的除湿机的许多研究正在进行中。如果较低的液体干燥剂流速使热交换器表面上的液膜保持较薄,则传热和传质性能将得到改善,液膜的稳定性会提高,并且不会发生干燥剂液滴的夹带。在这项研究中,已经研究了液体干燥剂沿板式换热器的垂直表面的润湿性。液体干燥剂被供应到具有不同凹槽间隙的板式热交换器的顶部。通过可视化测试发现,凹槽间隙为1.0 mm的板式换热器表现出最大的润湿性。随着所供给的液体干燥剂的质量流量增加,液体干燥剂的润湿性变得增强。建立了用于测量液体干燥剂再生性能的实验装置。对各种类型的板式热交换器进行了再生性能测试。通过开槽表面处理,液体干燥剂的润湿性增强,膜厚度减小。因此,发现可以提高液体干燥剂的水分排放速率和传质系数。

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